van Emmerick R E
Faculty of Human Movement Science, Vrije Universiteit, Amsterdam, The Netherlands.
J Mot Behav. 1992 Mar;24(1):117-31. doi: 10.1080/00222895.1992.9941607.
Kinematic adaptations in multijoint rhythmic drawing movements were investigated under unexpected perturbations in friction levels between stylus and writing surface. Changes in coupling and stability properties were assessed as a function of practice level by applying perturbations to subjects' dominant and nondominant limbs. Under nonperturbation and perturbation conditions, joint motions of right-handed subjects were highly coupled in the nondominant limb and uncoupled in the dominant limb. Stability analyses of the kinematic responses in the phase plane showed a relatively higher intrajoint resistance to perturbations in the nondominant limb as compared to the dominant limb for the elbow joint. indicating a decrease in global joint stiffness with practice. These changes in joint coupling and stiffness with practice were not observed for left-handed subjects. In addition, the stability to perturbations in the end-effector (stylus) kinematics was related to the amount of joint coupling in the nondominant limb, whereas in the dominant limb there existed no such coupling. It was concluded that (a) practice changes the responses to perturbations from anatomically specific early in practice to task-specific late in practice, and (b) this shift is related to the stability in the joint phase-plane dynamics, degree of coupling between joint angles, and the decoupling of the dynamics in the intrinsic and extrinsic control spaces.
在笔与书写表面之间摩擦力水平出现意外扰动的情况下,研究了多关节节律性绘图运动中的运动学适应性。通过对受试者的优势肢体和非优势肢体施加扰动,评估了耦合和稳定性特性随练习水平的变化。在无扰动和扰动条件下,右利手受试者的关节运动在非优势肢体中高度耦合,而在优势肢体中解耦。相平面中运动学响应的稳定性分析表明,与优势肢体相比,非优势肢体中肘关节对扰动的关节内阻力相对较高。这表明随着练习,整体关节刚度降低。左利手受试者未观察到随着练习关节耦合和刚度的这些变化。此外,末端执行器(笔)运动学对扰动的稳定性与非优势肢体中的关节耦合量有关,而在优势肢体中不存在这种耦合。得出的结论是:(a)练习会改变对扰动的反应,从练习早期的解剖学特异性反应转变为练习后期的任务特异性反应;(b)这种转变与关节相平面动力学中的稳定性、关节角度之间的耦合程度以及内在和外在控制空间中动力学的解耦有关。